首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Turbulent flame boundary and structure detection in an optical DISI engine using tracer-based two-line PLIF technique
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Turbulent flame boundary and structure detection in an optical DISI engine using tracer-based two-line PLIF technique

机译:使用基于示踪剂的两线PLIF技术在光学DISI发动机中进行湍流火焰边界和结构检测

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Design and development of new combustion system for Spark Ignition Direct Injection (DISI) engines requires thorough understanding of the flame as it develops from electric discharge and propagates across the combustion chamber. The main purpose of this work was to develop an experimental setup capable of investigating premixed and partially-premixed turbulent flame boundary and structure inside combustion chamber of a DISI engine. For this purpose the tracer-based two-line Planar Laser Induced Fluorescence (PLIF) technique was set up. In order to have a thermometry technique independent of photophysical models of dopant tracer, a specially designed Constant Volume Chamber (CVC) was utilized for quasi in situ calibration measurements. The thermometry technique was evaluated by measurements of average in-cylinder charge temperature during compression stroke for both motoring and firing cycles and comparing the results with temperature values calculated from in-cylinder pressure data. The developed technique was successfully employed to detect flame boundary and structure during combustion process in the optical engine. The present study demonstrated that as the two-line PLIF thermal images are independent of species concentration and flame luminosity they can be utilized as accurate means for flame segmentation. The proposed technique has the potential to be utilized for study of turbulent flames in non-homogeneously mixed systems. (C) 2015 Elsevier Inc. All rights reserved.
机译:用于火花点火直接喷射(DISI)发动机的新型燃烧系统的设计和开发,需要对火焰进行透彻的了解,因为火焰是由放电产生并在燃烧室内传播的。这项工作的主要目的是开发一种能够研究DISI发动机燃烧室内部的预混合和部分预混合湍流火焰边界和结构的实验装置。为此,建立了基于示踪剂的两线平面激光诱导荧光(PLIF)技术。为了拥有独立于掺杂物示踪剂的光物理模型的测温技术,专门设计的恒定体积室(CVC)用于准原位校准测量。测温技术是通过测量压缩冲程过程中汽缸和点火缸的平均缸内充气温度,并将结果与​​从缸内压力数据计算出的温度值进行比较来评估的。所开发的技术已成功地用于检测光学引擎燃烧过程中的火焰边界和结构。本研究表明,由于两行PLIF热图像与物质浓度和火焰光度无关,因此它们可以用作火焰分割的准确方法。所提出的技术有潜力用于研究非均匀混合系统中的湍流火焰。 (C)2015 Elsevier Inc.保留所有权利。

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